上海交通大学学报(英文版) ›› 2012, Vol. 17 ›› Issue (1): 53-057.doi: 10.1007/s12204-012-1229-5

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A 38 MPa Compressor Based on Metal Hydrides

HU Xiao-chen (胡晓晨), QI Zhao-gang (祁照岗), YANG Ming (阳 明), CHEN Jiang-ping (陈江平)   

  1. (Institute of Refrigeration and Cryogenics Engineering, Shanghai Jiaotong University, Shanghai 200240, China)
  • 收稿日期:2011-06-29 出版日期:2012-02-29 发布日期:2012-03-21
  • 通讯作者: HU Xiao-chen (胡晓晨), E-mail:sissi.xiaochenhu@gmail.com

A 38 MPa Compressor Based on Metal Hydrides

HU Xiao-chen (胡晓晨), QI Zhao-gang (祁照岗), YANG Ming (阳 明), CHEN Jiang-ping (陈江平)   

  1. (Institute of Refrigeration and Cryogenics Engineering, Shanghai Jiaotong University, Shanghai 200240, China)
  • Received:2011-06-29 Online:2012-02-29 Published:2012-03-21
  • Contact: HU Xiao-chen (胡晓晨), E-mail:sissi.xiaochenhu@gmail.com

摘要: Abstract: Known as one of the most promising application of metal hydride (MH), the MH compressor can afford hydrogen with high pressure and high purity. Two AB5 type multi-component hydrogen storage alloys and vanadium are studied for the purpose of high pressure compression. A compact compression system has been built. Each designed small-size reactor contains seven special stainless-steel pipes. The single stage compressor can improve the hydrogen pressure from 2 up to 35 MPa with the hydrogen desorbed per unit mass of 207.8 mL/g. The two-stage compression can output hydrogen with pressure of 38 MPa steadily in whole 5.7 mol hydrogen output flow. However, its hydrogen desorbed per unit mass was only computed to 106.9 mL/g as a result of two reactors used in the cycle and the output mass of hydrogen increased less.

关键词: metal hydride, reactor, compressor, high pressure compression

Abstract: Abstract: Known as one of the most promising application of metal hydride (MH), the MH compressor can afford hydrogen with high pressure and high purity. Two AB5 type multi-component hydrogen storage alloys and vanadium are studied for the purpose of high pressure compression. A compact compression system has been built. Each designed small-size reactor contains seven special stainless-steel pipes. The single stage compressor can improve the hydrogen pressure from 2 up to 35 MPa with the hydrogen desorbed per unit mass of 207.8 mL/g. The two-stage compression can output hydrogen with pressure of 38 MPa steadily in whole 5.7 mol hydrogen output flow. However, its hydrogen desorbed per unit mass was only computed to 106.9 mL/g as a result of two reactors used in the cycle and the output mass of hydrogen increased less.

Key words: metal hydride, reactor, compressor, high pressure compression

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